This study investigates the corrosion of AISI 441 in simulated anode conditions of solid oxide fuel cells (SOFCs). Several parameters such as temperature, humidity, surface condition, pre-oxidation temperature and environment, were investigated. Samples pre-oxidized at 800 \ubaC were protective at 550–900 \ubaC, while as-received samples showed protective behavior only at 900 \ubaC. Additional exposures performed at 600 \ubaC revealed the negative effect of increasing steam concentration, the beneficial effect of grinding, while pre-oxidation at 600 \ubaC did not improve the protectiveness. The role and the interplay of the aforementioned factors are discussed
Iron or chromium based alloys are currently the most preferred materials for SOFC interconnects. The...
Solid oxide fuel cells (SOFCs) show great potential for clean and efficient power generation applica...
Recent developments of planar intermediate temperature solid oxide fuel cells (IT-SOFCs) make metall...
Dual atmosphere conditions have been shown to be detrimental for the ferritic stainless steel interc...
AISI 441 coated. with a double layer coating of 10 nm cerium (inner layer) and 630 nm cobalt was inv...
Solid oxide fuel cells (SOFC) are energy conversion systems with clean emissions (depending on the f...
Interconnects used in solid oxide fuel cells are subjected to dual atmosphere corrosion at 600 \ub0C...
AbstractAISI 441 coated with a double layer coating of 10 nm cerium (inner layer) and 630 nm cobalt ...
Solid oxide cells (SOC) have the potential to revolutionize electricity production by being able to ...
Balance of plant (BOP) components made of metallic materials in solid oxide fuel cells are subject t...
Significant progress made towards reducing the operating temperature of solid oxide fuel cells (SOFC...
The need of interconnect to separate fuel and oxidant gasses and connect individual cells into elect...
Solid Oxide Fuel Cells (SOFCs) are systems that convert chemical energy into electrical energy. Thei...
Significant progress in reducing the operating temperature of solid oxide fuel cells (SOFC) from {ap...
The present work aims to investigate the long-term stability of Ce/Co coated AISI 441 used as an int...
Iron or chromium based alloys are currently the most preferred materials for SOFC interconnects. The...
Solid oxide fuel cells (SOFCs) show great potential for clean and efficient power generation applica...
Recent developments of planar intermediate temperature solid oxide fuel cells (IT-SOFCs) make metall...
Dual atmosphere conditions have been shown to be detrimental for the ferritic stainless steel interc...
AISI 441 coated. with a double layer coating of 10 nm cerium (inner layer) and 630 nm cobalt was inv...
Solid oxide fuel cells (SOFC) are energy conversion systems with clean emissions (depending on the f...
Interconnects used in solid oxide fuel cells are subjected to dual atmosphere corrosion at 600 \ub0C...
AbstractAISI 441 coated with a double layer coating of 10 nm cerium (inner layer) and 630 nm cobalt ...
Solid oxide cells (SOC) have the potential to revolutionize electricity production by being able to ...
Balance of plant (BOP) components made of metallic materials in solid oxide fuel cells are subject t...
Significant progress made towards reducing the operating temperature of solid oxide fuel cells (SOFC...
The need of interconnect to separate fuel and oxidant gasses and connect individual cells into elect...
Solid Oxide Fuel Cells (SOFCs) are systems that convert chemical energy into electrical energy. Thei...
Significant progress in reducing the operating temperature of solid oxide fuel cells (SOFC) from {ap...
The present work aims to investigate the long-term stability of Ce/Co coated AISI 441 used as an int...
Iron or chromium based alloys are currently the most preferred materials for SOFC interconnects. The...
Solid oxide fuel cells (SOFCs) show great potential for clean and efficient power generation applica...
Recent developments of planar intermediate temperature solid oxide fuel cells (IT-SOFCs) make metall...